Abstract
Three dimensional magnetohydrodynamical simulations were carried out in order to perform a new polarization study of the radio emission of the supernova remnant SN 1006. These simulations consider that the remnant expands into a turbulent interstellar medium (including both magnetic field and figuredensity perturbations). Based on the referenced-polar angle technique, a statistical study was done on observational and numerical magnetic field position-angle distributions. Our results show that a turbulent medium with an adiabatic index of 1.3 can reproduce the polarization properties of the SN 1006 remnant. This statistical study reveals itself as a useful tool for obtaining the orientation of the ambient magnetic field, previous to be swept up by the main supernova remnant shock.
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Velázquez, P. F., Schneiter, E. M., Reynoso, E. M., Esquivel, A., de Colle, F., Toledo-Roy, J. C., … Moranchel-Basurto, A. (2017). A 3D MHD simulation of SN 1006: A polarized emission study for the turbulent case. Monthly Notices of the Royal Astronomical Society, 466(4), 4851–4857. https://doi.org/10.1093/mnras/stx064
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